Response surface methodology for optimal immobilization of Aspergillus niger ATCC 1015 lipase by adsorption method

M. Osho, T. Popoola, T. Adeleye, C. Adetunji
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引用次数: 5

Abstract

Optimization of Vegetable Sponge ( Luffa aegyptiaca ) (VS) - immobilization conditions of Aspergillus niger ATCC 1015 lipase on Solid State Fermentation (SSF) was carried out using Response Surface Methodology (RSM). Four independent variables (temperature, pH, enzyme loading and enzyme stability) were optimized using Central Composite Design of RSM for lipase production in a solid rice bran-physic nut cake medium. The optimal immobilization conditions obtained were 45 °C, pH 7.0, 2.5% (w/v) enzyme loading and 32.5% (v/v) enzyme stability (using glutaraldehyde as crosslinking agent) resulted into lipase activity of 98.6 Ug -1 . The result demonstrates the potential application of vegetable sponge under SSF system in immobilizing lipase, thus contributed to efficiency of the use of this biomatrix as an immobilizing agent. The statistical tools employed predicted the optimal conditions for the production of the immobilized lipase thus revealing the full potential of the support.
吸附法固定化黑曲霉ATCC 1015脂肪酶的响应面法研究
采用响应面法(RSM)对蔬菜海绵(Luffa aegyptiaca)固态发酵(SSF)固定黑曲霉ATCC 1015脂肪酶的条件进行优化。采用RSM中心复合设计对固体米糠-物理果仁饼培养基中脂肪酶的生产过程进行了温度、pH、酶负荷和酶稳定性4个自变量的优化。最佳固定化条件为:45℃,pH 7.0, 2.5% (w/v)的酶载量和32.5% (v/v)的酶稳定性(以戊二醛为交联剂),脂肪酶活性为98.6 Ug -1。结果表明,植物海绵在SSF体系下固定化脂肪酶具有潜在的应用前景,从而提高了该生物基质作为固定化剂的使用效率。利用统计工具预测了固定化脂肪酶生产的最佳条件,从而揭示了载体的全部潜力。
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